2 * Redistribution and use in source and binary forms, with or without
3 * modification, are permitted provided that: (1) source code
4 * distributions retain the above copyright notice and this paragraph
5 * in its entirety, and (2) distributions including binary code include
6 * the above copyright notice and this paragraph in its entirety in
7 * the documentation or other materials provided with the distribution.
8 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND
9 * WITHOUT ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, WITHOUT
10 * LIMITATION, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
11 * FOR A PARTICULAR PURPOSE.
13 * Original code by Hannes Gredler (hannes@gredler.at)
14 * Support for LMP service discovery extensions (defined by OIF UNI 1.0)
15 * added by Manu Pathak (mapathak@cisco.com), May 2005
18 /* \summary: Link Management Protocol (LMP) printer */
20 /* specification: RFC 4204 */
21 /* OIF UNI 1.0: https://web.archive.org/web/20160401194747/http://www.oiforum.com/public/documents/OIF-UNI-01.0.pdf */
27 #include "netdissect-stdinc.h"
29 #include "netdissect.h"
31 #include "addrtoname.h"
39 * 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
40 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
41 * | Vers | (Reserved) | Flags | Msg Type |
42 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
43 * | LMP Length | (Reserved) |
44 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
47 struct lmp_common_header
{
48 nd_uint16_t version_res
;
56 #define LMP_EXTRACT_VERSION(x) (((x)&0xf000)>>12)
58 static const struct tok lmp_header_flag_values
[] = {
59 { 0x01, "Control Channel Down"},
60 { 0x02, "LMP restart"},
64 static const struct tok lmp_obj_te_link_flag_values
[] = {
65 { 0x01, "Fault Management Supported"},
66 { 0x02, "Link Verification Supported"},
70 static const struct tok lmp_obj_data_link_flag_values
[] = {
71 { 0x01, "Data Link Port"},
72 { 0x02, "Allocated for user traffic"},
73 { 0x04, "Failed link"},
77 static const struct tok lmp_obj_channel_status_values
[] = {
79 { 2, "Signal Degraded"},
84 static const struct tok lmp_obj_begin_verify_flag_values
[] = {
85 { 0x0001, "Verify all links"},
86 { 0x0002, "Data link type"},
90 static const struct tok lmp_obj_begin_verify_error_values
[] = {
91 { 0x01, "Link Verification Procedure Not supported"},
92 { 0x02, "Unwilling to verify"},
93 { 0x04, "Unsupported verification transport mechanism"},
94 { 0x08, "Link-Id configuration error"},
95 { 0x10, "Unknown object c-type"},
99 static const struct tok lmp_obj_link_summary_error_values
[] = {
100 { 0x01, "Unacceptable non-negotiable LINK-SUMMARY parameters"},
101 { 0x02, "Renegotiate LINK-SUMMARY parameters"},
102 { 0x04, "Invalid TE-LINK Object"},
103 { 0x08, "Invalid DATA-LINK Object"},
104 { 0x10, "Unknown TE-LINK Object c-type"},
105 { 0x20, "Unknown DATA-LINK Object c-type"},
109 /* Service Config Supported Protocols Flags */
110 static const struct tok lmp_obj_service_config_sp_flag_values
[] = {
111 { 0x01, "RSVP Supported"},
112 { 0x02, "LDP Supported"},
116 /* Service Config Client Port Service Attribute Transparency Flags */
117 static const struct tok lmp_obj_service_config_cpsa_tp_flag_values
[] = {
118 { 0x01, "Path/VC Overhead Transparency Supported"},
119 { 0x02, "Line/MS Overhead Transparency Supported"},
120 { 0x04, "Section/RS Overhead Transparency Supported"},
124 /* Service Config Client Port Service Attribute Contiguous Concatenation Types Flags */
125 static const struct tok lmp_obj_service_config_cpsa_cct_flag_values
[] = {
126 { 0x01, "Contiguous Concatenation Types Supported"},
130 /* Service Config Network Service Attributes Transparency Flags */
131 static const struct tok lmp_obj_service_config_nsa_transparency_flag_values
[] = {
132 { 0x01, "Standard SOH/RSOH Transparency Supported"},
133 { 0x02, "Standard LOH/MSOH Transparency Supported"},
137 /* Service Config Network Service Attributes TCM Monitoring Flags */
138 static const struct tok lmp_obj_service_config_nsa_tcm_flag_values
[] = {
139 { 0x01, "Transparent Tandem Connection Monitoring Supported"},
143 /* Network Service Attributes Network Diversity Flags */
144 static const struct tok lmp_obj_service_config_nsa_network_diversity_flag_values
[] = {
145 { 0x01, "Node Diversity Supported"},
146 { 0x02, "Link Diversity Supported"},
147 { 0x04, "SRLG Diversity Supported"},
151 #define LMP_MSGTYPE_CONFIG 1
152 #define LMP_MSGTYPE_CONFIG_ACK 2
153 #define LMP_MSGTYPE_CONFIG_NACK 3
154 #define LMP_MSGTYPE_HELLO 4
155 #define LMP_MSGTYPE_VERIFY_BEGIN 5
156 #define LMP_MSGTYPE_VERIFY_BEGIN_ACK 6
157 #define LMP_MSGTYPE_VERIFY_BEGIN_NACK 7
158 #define LMP_MSGTYPE_VERIFY_END 8
159 #define LMP_MSGTYPE_VERIFY_END_ACK 9
160 #define LMP_MSGTYPE_TEST 10
161 #define LMP_MSGTYPE_TEST_STATUS_SUCCESS 11
162 #define LMP_MSGTYPE_TEST_STATUS_FAILURE 12
163 #define LMP_MSGTYPE_TEST_STATUS_ACK 13
164 #define LMP_MSGTYPE_LINK_SUMMARY 14
165 #define LMP_MSGTYPE_LINK_SUMMARY_ACK 15
166 #define LMP_MSGTYPE_LINK_SUMMARY_NACK 16
167 #define LMP_MSGTYPE_CHANNEL_STATUS 17
168 #define LMP_MSGTYPE_CHANNEL_STATUS_ACK 18
169 #define LMP_MSGTYPE_CHANNEL_STATUS_REQ 19
170 #define LMP_MSGTYPE_CHANNEL_STATUS_RESP 20
171 /* LMP Service Discovery message types defined by UNI 1.0 */
172 #define LMP_MSGTYPE_SERVICE_CONFIG 50
173 #define LMP_MSGTYPE_SERVICE_CONFIG_ACK 51
174 #define LMP_MSGTYPE_SERVICE_CONFIG_NACK 52
176 static const struct tok lmp_msg_type_values
[] = {
177 { LMP_MSGTYPE_CONFIG
, "Config"},
178 { LMP_MSGTYPE_CONFIG_ACK
, "Config ACK"},
179 { LMP_MSGTYPE_CONFIG_NACK
, "Config NACK"},
180 { LMP_MSGTYPE_HELLO
, "Hello"},
181 { LMP_MSGTYPE_VERIFY_BEGIN
, "Begin Verify"},
182 { LMP_MSGTYPE_VERIFY_BEGIN_ACK
, "Begin Verify ACK"},
183 { LMP_MSGTYPE_VERIFY_BEGIN_NACK
, "Begin Verify NACK"},
184 { LMP_MSGTYPE_VERIFY_END
, "End Verify"},
185 { LMP_MSGTYPE_VERIFY_END_ACK
, "End Verify ACK"},
186 { LMP_MSGTYPE_TEST
, "Test"},
187 { LMP_MSGTYPE_TEST_STATUS_SUCCESS
, "Test Status Success"},
188 { LMP_MSGTYPE_TEST_STATUS_FAILURE
, "Test Status Failure"},
189 { LMP_MSGTYPE_TEST_STATUS_ACK
, "Test Status ACK"},
190 { LMP_MSGTYPE_LINK_SUMMARY
, "Link Summary"},
191 { LMP_MSGTYPE_LINK_SUMMARY_ACK
, "Link Summary ACK"},
192 { LMP_MSGTYPE_LINK_SUMMARY_NACK
, "Link Summary NACK"},
193 { LMP_MSGTYPE_CHANNEL_STATUS
, "Channel Status"},
194 { LMP_MSGTYPE_CHANNEL_STATUS_ACK
, "Channel Status ACK"},
195 { LMP_MSGTYPE_CHANNEL_STATUS_REQ
, "Channel Status Request"},
196 { LMP_MSGTYPE_CHANNEL_STATUS_RESP
, "Channel Status Response"},
197 { LMP_MSGTYPE_SERVICE_CONFIG
, "Service Config"},
198 { LMP_MSGTYPE_SERVICE_CONFIG_ACK
, "Service Config ACK"},
199 { LMP_MSGTYPE_SERVICE_CONFIG_NACK
, "Service Config NACK"},
207 * 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
208 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
209 * |N| C-Type | Class | Length |
210 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
212 * // (object contents) //
214 * +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
217 struct lmp_object_header
{
219 nd_uint8_t class_num
;
223 #define LMP_OBJ_CC_ID 1
224 #define LMP_OBJ_NODE_ID 2
225 #define LMP_OBJ_LINK_ID 3
226 #define LMP_OBJ_INTERFACE_ID 4
227 #define LMP_OBJ_MESSAGE_ID 5
228 #define LMP_OBJ_CONFIG 6
229 #define LMP_OBJ_HELLO 7
230 #define LMP_OBJ_VERIFY_BEGIN 8
231 #define LMP_OBJ_VERIFY_BEGIN_ACK 9
232 #define LMP_OBJ_VERIFY_ID 10
233 #define LMP_OBJ_TE_LINK 11
234 #define LMP_OBJ_DATA_LINK 12
235 #define LMP_OBJ_CHANNEL_STATUS 13
236 #define LMP_OBJ_CHANNEL_STATUS_REQ 14
237 #define LMP_OBJ_ERROR_CODE 20
239 #define LMP_OBJ_SERVICE_CONFIG 51 /* defined in UNI 1.0 */
241 static const struct tok lmp_obj_values
[] = {
242 { LMP_OBJ_CC_ID
, "Control Channel ID" },
243 { LMP_OBJ_NODE_ID
, "Node ID" },
244 { LMP_OBJ_LINK_ID
, "Link ID" },
245 { LMP_OBJ_INTERFACE_ID
, "Interface ID" },
246 { LMP_OBJ_MESSAGE_ID
, "Message ID" },
247 { LMP_OBJ_CONFIG
, "Configuration" },
248 { LMP_OBJ_HELLO
, "Hello" },
249 { LMP_OBJ_VERIFY_BEGIN
, "Verify Begin" },
250 { LMP_OBJ_VERIFY_BEGIN_ACK
, "Verify Begin ACK" },
251 { LMP_OBJ_VERIFY_ID
, "Verify ID" },
252 { LMP_OBJ_TE_LINK
, "TE Link" },
253 { LMP_OBJ_DATA_LINK
, "Data Link" },
254 { LMP_OBJ_CHANNEL_STATUS
, "Channel Status" },
255 { LMP_OBJ_CHANNEL_STATUS_REQ
, "Channel Status Request" },
256 { LMP_OBJ_ERROR_CODE
, "Error Code" },
257 { LMP_OBJ_SERVICE_CONFIG
, "Service Config" },
262 #define INT_SWITCHING_TYPE_SUBOBJ 1
263 #define WAVELENGTH_SUBOBJ 2
265 static const struct tok lmp_data_link_subobj
[] = {
266 { INT_SWITCHING_TYPE_SUBOBJ
, "Interface Switching Type" },
267 { WAVELENGTH_SUBOBJ
, "Wavelength" },
271 #define LMP_CTYPE_IPV4 1
272 #define LMP_CTYPE_IPV6 2
274 #define LMP_CTYPE_LOC 1
275 #define LMP_CTYPE_RMT 2
276 #define LMP_CTYPE_UNMD 3
278 #define LMP_CTYPE_IPV4_LOC 1
279 #define LMP_CTYPE_IPV4_RMT 2
280 #define LMP_CTYPE_IPV6_LOC 3
281 #define LMP_CTYPE_IPV6_RMT 4
282 #define LMP_CTYPE_UNMD_LOC 5
283 #define LMP_CTYPE_UNMD_RMT 6
285 #define LMP_CTYPE_1 1
286 #define LMP_CTYPE_2 2
288 #define LMP_CTYPE_HELLO_CONFIG 1
289 #define LMP_CTYPE_HELLO 1
291 #define LMP_CTYPE_BEGIN_VERIFY_ERROR 1
292 #define LMP_CTYPE_LINK_SUMMARY_ERROR 2
294 /* C-Types for Service Config Object */
295 #define LMP_CTYPE_SERVICE_CONFIG_SP 1
296 #define LMP_CTYPE_SERVICE_CONFIG_CPSA 2
297 #define LMP_CTYPE_SERVICE_CONFIG_TRANSPARENCY_TCM 3
298 #define LMP_CTYPE_SERVICE_CONFIG_NETWORK_DIVERSITY 4
301 * Different link types allowed in the Client Port Service Attributes
302 * subobject defined for LMP Service Discovery in the UNI 1.0 spec
304 #define LMP_SD_SERVICE_CONFIG_CPSA_LINK_TYPE_SDH 5 /* UNI 1.0 Sec 9.4.2 */
305 #define LMP_SD_SERVICE_CONFIG_CPSA_LINK_TYPE_SONET 6 /* UNI 1.0 Sec 9.4.2 */
308 * the ctypes are not globally unique so for
309 * translating it to strings we build a table based
310 * on objects offsetted by the ctype
313 static const struct tok lmp_ctype_values
[] = {
314 { 256*LMP_OBJ_CC_ID
+LMP_CTYPE_LOC
, "Local" },
315 { 256*LMP_OBJ_CC_ID
+LMP_CTYPE_RMT
, "Remote" },
316 { 256*LMP_OBJ_NODE_ID
+LMP_CTYPE_LOC
, "Local" },
317 { 256*LMP_OBJ_NODE_ID
+LMP_CTYPE_RMT
, "Remote" },
318 { 256*LMP_OBJ_LINK_ID
+LMP_CTYPE_IPV4_LOC
, "IPv4 Local" },
319 { 256*LMP_OBJ_LINK_ID
+LMP_CTYPE_IPV4_RMT
, "IPv4 Remote" },
320 { 256*LMP_OBJ_LINK_ID
+LMP_CTYPE_IPV6_LOC
, "IPv6 Local" },
321 { 256*LMP_OBJ_LINK_ID
+LMP_CTYPE_IPV6_RMT
, "IPv6 Remote" },
322 { 256*LMP_OBJ_LINK_ID
+LMP_CTYPE_UNMD_LOC
, "Unnumbered Local" },
323 { 256*LMP_OBJ_LINK_ID
+LMP_CTYPE_UNMD_RMT
, "Unnumbered Remote" },
324 { 256*LMP_OBJ_INTERFACE_ID
+LMP_CTYPE_IPV4_LOC
, "IPv4 Local" },
325 { 256*LMP_OBJ_INTERFACE_ID
+LMP_CTYPE_IPV4_RMT
, "IPv4 Remote" },
326 { 256*LMP_OBJ_INTERFACE_ID
+LMP_CTYPE_IPV6_LOC
, "IPv6 Local" },
327 { 256*LMP_OBJ_INTERFACE_ID
+LMP_CTYPE_IPV6_RMT
, "IPv6 Remote" },
328 { 256*LMP_OBJ_INTERFACE_ID
+LMP_CTYPE_UNMD_LOC
, "Unnumbered Local" },
329 { 256*LMP_OBJ_INTERFACE_ID
+LMP_CTYPE_UNMD_RMT
, "Unnumbered Remote" },
330 { 256*LMP_OBJ_MESSAGE_ID
+LMP_CTYPE_1
, "1" },
331 { 256*LMP_OBJ_MESSAGE_ID
+LMP_CTYPE_2
, "2" },
332 { 256*LMP_OBJ_CONFIG
+LMP_CTYPE_1
, "1" },
333 { 256*LMP_OBJ_HELLO
+LMP_CTYPE_1
, "1" },
334 { 256*LMP_OBJ_VERIFY_BEGIN
+LMP_CTYPE_1
, "1" },
335 { 256*LMP_OBJ_VERIFY_BEGIN_ACK
+LMP_CTYPE_1
, "1" },
336 { 256*LMP_OBJ_VERIFY_ID
+LMP_CTYPE_1
, "1" },
337 { 256*LMP_OBJ_TE_LINK
+LMP_CTYPE_IPV4
, "IPv4" },
338 { 256*LMP_OBJ_TE_LINK
+LMP_CTYPE_IPV6
, "IPv6" },
339 { 256*LMP_OBJ_TE_LINK
+LMP_CTYPE_UNMD
, "Unnumbered" },
340 { 256*LMP_OBJ_DATA_LINK
+LMP_CTYPE_IPV4
, "IPv4" },
341 { 256*LMP_OBJ_DATA_LINK
+LMP_CTYPE_IPV6
, "IPv6" },
342 { 256*LMP_OBJ_DATA_LINK
+LMP_CTYPE_UNMD
, "Unnumbered" },
343 { 256*LMP_OBJ_CHANNEL_STATUS
+LMP_CTYPE_IPV4
, "IPv4" },
344 { 256*LMP_OBJ_CHANNEL_STATUS
+LMP_CTYPE_IPV6
, "IPv6" },
345 { 256*LMP_OBJ_CHANNEL_STATUS
+LMP_CTYPE_UNMD
, "Unnumbered" },
346 { 256*LMP_OBJ_CHANNEL_STATUS_REQ
+LMP_CTYPE_IPV4
, "IPv4" },
347 { 256*LMP_OBJ_CHANNEL_STATUS_REQ
+LMP_CTYPE_IPV6
, "IPv6" },
348 { 256*LMP_OBJ_CHANNEL_STATUS_REQ
+LMP_CTYPE_UNMD
, "Unnumbered" },
349 { 256*LMP_OBJ_ERROR_CODE
+LMP_CTYPE_1
, "1" },
350 { 256*LMP_OBJ_ERROR_CODE
+LMP_CTYPE_2
, "2" },
351 { 256*LMP_OBJ_SERVICE_CONFIG
+LMP_CTYPE_SERVICE_CONFIG_SP
, "1" },
352 { 256*LMP_OBJ_SERVICE_CONFIG
+LMP_CTYPE_SERVICE_CONFIG_CPSA
, "2" },
353 { 256*LMP_OBJ_SERVICE_CONFIG
+LMP_CTYPE_SERVICE_CONFIG_TRANSPARENCY_TCM
, "3" },
354 { 256*LMP_OBJ_SERVICE_CONFIG
+LMP_CTYPE_SERVICE_CONFIG_NETWORK_DIVERSITY
, "4" },
359 lmp_print_data_link_subobjs(netdissect_options
*ndo
, const u_char
*obj_tptr
,
360 int total_subobj_len
, int offset
)
363 int subobj_type
, subobj_len
;
365 union { /* int to float conversion buffer */
370 while (total_subobj_len
> 0 && hexdump
== FALSE
) {
371 subobj_type
= GET_U_1(obj_tptr
+ offset
);
372 subobj_len
= GET_U_1(obj_tptr
+ offset
+ 1);
373 ND_PRINT("\n\t Subobject, Type: %s (%u), Length: %u",
374 tok2str(lmp_data_link_subobj
,
379 if (subobj_len
< 4) {
380 ND_PRINT(" (too short)");
383 if ((subobj_len
% 4) != 0) {
384 ND_PRINT(" (not a multiple of 4)");
387 if (total_subobj_len
< subobj_len
) {
388 ND_PRINT(" (goes past the end of the object)");
391 switch(subobj_type
) {
392 case INT_SWITCHING_TYPE_SUBOBJ
:
393 ND_PRINT("\n\t Switching Type: %s (%u)",
394 tok2str(gmpls_switch_cap_values
,
396 GET_U_1(obj_tptr
+ offset
+ 2)),
397 GET_U_1(obj_tptr
+ offset
+ 2));
398 ND_PRINT("\n\t Encoding Type: %s (%u)",
399 tok2str(gmpls_encoding_values
,
401 GET_U_1(obj_tptr
+ offset
+ 3)),
402 GET_U_1(obj_tptr
+ offset
+ 3));
403 bw
.i
= GET_BE_U_4(obj_tptr
+ offset
+ 4);
404 ND_PRINT("\n\t Min Reservable Bandwidth: %.3f Mbps",
406 bw
.i
= GET_BE_U_4(obj_tptr
+ offset
+ 8);
407 ND_PRINT("\n\t Max Reservable Bandwidth: %.3f Mbps",
410 case WAVELENGTH_SUBOBJ
:
411 ND_PRINT("\n\t Wavelength: %u",
412 GET_BE_U_4(obj_tptr
+ offset
+ 4));
415 /* Any Unknown Subobject ==> Exit loop */
419 total_subobj_len
-=subobj_len
;
426 lmp_print(netdissect_options
*ndo
,
427 const u_char
*pptr
, u_int length
)
429 const struct lmp_common_header
*lmp_com_header
;
430 const struct lmp_object_header
*lmp_obj_header
;
431 const u_char
*tptr
,*obj_tptr
;
432 u_int version_res
, tlen
, lmp_obj_len
, lmp_obj_ctype
, obj_tlen
;
437 union { /* int to float conversion buffer */
442 ndo
->ndo_protocol
= "lmp";
444 lmp_com_header
= (const struct lmp_common_header
*)pptr
;
445 ND_TCHECK_SIZE(lmp_com_header
);
447 version_res
= GET_BE_U_2(lmp_com_header
->version_res
);
450 * Sanity checking of the header.
452 if (LMP_EXTRACT_VERSION(version_res
) != LMP_VERSION
) {
453 ND_PRINT("LMP version %u packet not supported",
454 LMP_EXTRACT_VERSION(version_res
));
458 /* in non-verbose mode just lets print the basic Message Type*/
459 if (ndo
->ndo_vflag
< 1) {
460 ND_PRINT("LMPv%u %s Message, length: %u",
461 LMP_EXTRACT_VERSION(version_res
),
462 tok2str(lmp_msg_type_values
, "unknown (%u)",GET_U_1(lmp_com_header
->msg_type
)),
467 /* ok they seem to want to know everything - lets fully decode it */
469 tlen
=GET_BE_U_2(lmp_com_header
->length
);
471 ND_PRINT("\n\tLMPv%u, msg-type: %s, Flags: [%s], length: %u",
472 LMP_EXTRACT_VERSION(version_res
),
473 tok2str(lmp_msg_type_values
, "unknown, type: %u",GET_U_1(lmp_com_header
->msg_type
)),
474 bittok2str(lmp_header_flag_values
,"none",GET_U_1(lmp_com_header
->flags
)),
476 if (tlen
< sizeof(struct lmp_common_header
)) {
477 ND_PRINT(" (too short)");
481 ND_PRINT(" (too long)");
485 tptr
+=sizeof(struct lmp_common_header
);
486 tlen
-=sizeof(struct lmp_common_header
);
489 /* did we capture enough for fully decoding the object header ? */
490 ND_TCHECK_LEN(tptr
, sizeof(struct lmp_object_header
));
492 lmp_obj_header
= (const struct lmp_object_header
*)tptr
;
493 lmp_obj_len
=GET_BE_U_2(lmp_obj_header
->length
);
494 lmp_obj_ctype
=GET_U_1(lmp_obj_header
->ctype
)&0x7f;
496 ND_PRINT("\n\t %s Object (%u), Class-Type: %s (%u) Flags: [%snegotiable], length: %u",
497 tok2str(lmp_obj_values
,
499 GET_U_1(lmp_obj_header
->class_num
)),
500 GET_U_1(lmp_obj_header
->class_num
),
501 tok2str(lmp_ctype_values
,
503 (GET_U_1(lmp_obj_header
->class_num
)<<8)+lmp_obj_ctype
),
505 GET_U_1(lmp_obj_header
->ctype
)&0x80 ? "" : "non-",
508 if (lmp_obj_len
< 4) {
509 ND_PRINT(" (too short)");
512 if ((lmp_obj_len
% 4) != 0) {
513 ND_PRINT(" (not a multiple of 4)");
517 obj_tptr
=tptr
+sizeof(struct lmp_object_header
);
518 obj_tlen
=lmp_obj_len
-sizeof(struct lmp_object_header
);
520 /* did we capture enough for fully decoding the object ? */
521 ND_TCHECK_LEN(tptr
, lmp_obj_len
);
524 switch(GET_U_1(lmp_obj_header
->class_num
)) {
527 switch(lmp_obj_ctype
) {
531 ND_PRINT(" (not correct for object)");
534 ND_PRINT("\n\t Control Channel ID: %u (0x%08x)",
535 GET_BE_U_4(obj_tptr
),
536 GET_BE_U_4(obj_tptr
));
544 case LMP_OBJ_LINK_ID
:
545 case LMP_OBJ_INTERFACE_ID
:
546 switch(lmp_obj_ctype
) {
547 case LMP_CTYPE_IPV4_LOC
:
548 case LMP_CTYPE_IPV4_RMT
:
550 ND_PRINT(" (not correct for object)");
553 ND_PRINT("\n\t IPv4 Link ID: %s (0x%08x)",
554 GET_IPADDR_STRING(obj_tptr
),
555 GET_BE_U_4(obj_tptr
));
557 case LMP_CTYPE_IPV6_LOC
:
558 case LMP_CTYPE_IPV6_RMT
:
559 if (obj_tlen
!= 16) {
560 ND_PRINT(" (not correct for object)");
563 ND_PRINT("\n\t IPv6 Link ID: %s (0x%08x)",
564 GET_IP6ADDR_STRING(obj_tptr
),
565 GET_BE_U_4(obj_tptr
));
567 case LMP_CTYPE_UNMD_LOC
:
568 case LMP_CTYPE_UNMD_RMT
:
570 ND_PRINT(" (not correct for object)");
573 ND_PRINT("\n\t Link ID: %u (0x%08x)",
574 GET_BE_U_4(obj_tptr
),
575 GET_BE_U_4(obj_tptr
));
582 case LMP_OBJ_MESSAGE_ID
:
583 switch(lmp_obj_ctype
) {
586 ND_PRINT(" (not correct for object)");
589 ND_PRINT("\n\t Message ID: %u (0x%08x)",
590 GET_BE_U_4(obj_tptr
),
591 GET_BE_U_4(obj_tptr
));
595 ND_PRINT(" (not correct for object)");
598 ND_PRINT("\n\t Message ID Ack: %u (0x%08x)",
599 GET_BE_U_4(obj_tptr
),
600 GET_BE_U_4(obj_tptr
));
607 case LMP_OBJ_NODE_ID
:
608 switch(lmp_obj_ctype
) {
612 ND_PRINT(" (not correct for object)");
615 ND_PRINT("\n\t Node ID: %s (0x%08x)",
616 GET_IPADDR_STRING(obj_tptr
),
617 GET_BE_U_4(obj_tptr
));
626 switch(lmp_obj_ctype
) {
627 case LMP_CTYPE_HELLO_CONFIG
:
629 ND_PRINT(" (not correct for object)");
632 ND_PRINT("\n\t Hello Interval: %u\n\t Hello Dead Interval: %u",
633 GET_BE_U_2(obj_tptr
),
634 GET_BE_U_2(obj_tptr
+ 2));
643 switch(lmp_obj_ctype
) {
644 case LMP_CTYPE_HELLO
:
646 ND_PRINT(" (not correct for object)");
649 ND_PRINT("\n\t Tx Seq: %u, Rx Seq: %u",
650 GET_BE_U_4(obj_tptr
),
651 GET_BE_U_4(obj_tptr
+ 4));
659 case LMP_OBJ_TE_LINK
:
660 switch(lmp_obj_ctype
) {
662 if (obj_tlen
!= 12) {
663 ND_PRINT(" (not correct for object)");
666 ND_PRINT("\n\t Flags: [%s]",
667 bittok2str(lmp_obj_te_link_flag_values
,
671 ND_PRINT("\n\t Local Link-ID: %s (0x%08x)"
672 "\n\t Remote Link-ID: %s (0x%08x)",
673 GET_IPADDR_STRING(obj_tptr
+4),
674 GET_BE_U_4(obj_tptr
+ 4),
675 GET_IPADDR_STRING(obj_tptr
+8),
676 GET_BE_U_4(obj_tptr
+ 8));
680 if (obj_tlen
!= 36) {
681 ND_PRINT(" (not correct for object)");
684 ND_PRINT("\n\t Flags: [%s]",
685 bittok2str(lmp_obj_te_link_flag_values
,
689 ND_PRINT("\n\t Local Link-ID: %s (0x%08x)"
690 "\n\t Remote Link-ID: %s (0x%08x)",
691 GET_IP6ADDR_STRING(obj_tptr
+4),
692 GET_BE_U_4(obj_tptr
+ 4),
693 GET_IP6ADDR_STRING(obj_tptr
+20),
694 GET_BE_U_4(obj_tptr
+ 20));
698 if (obj_tlen
!= 12) {
699 ND_PRINT(" (not correct for object)");
702 ND_PRINT("\n\t Flags: [%s]",
703 bittok2str(lmp_obj_te_link_flag_values
,
707 ND_PRINT("\n\t Local Link-ID: %u (0x%08x)"
708 "\n\t Remote Link-ID: %u (0x%08x)",
709 GET_BE_U_4(obj_tptr
+ 4),
710 GET_BE_U_4(obj_tptr
+ 4),
711 GET_BE_U_4(obj_tptr
+ 8),
712 GET_BE_U_4(obj_tptr
+ 8));
720 case LMP_OBJ_DATA_LINK
:
721 switch(lmp_obj_ctype
) {
724 ND_PRINT(" (not correct for object)");
727 ND_PRINT("\n\t Flags: [%s]",
728 bittok2str(lmp_obj_data_link_flag_values
,
731 ND_PRINT("\n\t Local Interface ID: %s (0x%08x)"
732 "\n\t Remote Interface ID: %s (0x%08x)",
733 GET_IPADDR_STRING(obj_tptr
+4),
734 GET_BE_U_4(obj_tptr
+ 4),
735 GET_IPADDR_STRING(obj_tptr
+8),
736 GET_BE_U_4(obj_tptr
+ 8));
738 if (lmp_print_data_link_subobjs(ndo
, obj_tptr
, obj_tlen
- 12, 12))
744 ND_PRINT(" (not correct for object)");
747 ND_PRINT("\n\t Flags: [%s]",
748 bittok2str(lmp_obj_data_link_flag_values
,
751 ND_PRINT("\n\t Local Interface ID: %s (0x%08x)"
752 "\n\t Remote Interface ID: %s (0x%08x)",
753 GET_IP6ADDR_STRING(obj_tptr
+4),
754 GET_BE_U_4(obj_tptr
+ 4),
755 GET_IP6ADDR_STRING(obj_tptr
+20),
756 GET_BE_U_4(obj_tptr
+ 20));
758 if (lmp_print_data_link_subobjs(ndo
, obj_tptr
, obj_tlen
- 36, 36))
764 ND_PRINT(" (not correct for object)");
767 ND_PRINT("\n\t Flags: [%s]",
768 bittok2str(lmp_obj_data_link_flag_values
,
771 ND_PRINT("\n\t Local Interface ID: %u (0x%08x)"
772 "\n\t Remote Interface ID: %u (0x%08x)",
773 GET_BE_U_4(obj_tptr
+ 4),
774 GET_BE_U_4(obj_tptr
+ 4),
775 GET_BE_U_4(obj_tptr
+ 8),
776 GET_BE_U_4(obj_tptr
+ 8));
778 if (lmp_print_data_link_subobjs(ndo
, obj_tptr
, obj_tlen
- 12, 12))
787 case LMP_OBJ_VERIFY_BEGIN
:
788 switch(lmp_obj_ctype
) {
790 if (obj_tlen
!= 20) {
791 ND_PRINT(" (not correct for object)");
794 ND_PRINT("\n\t Flags: %s",
795 bittok2str(lmp_obj_begin_verify_flag_values
,
797 GET_BE_U_2(obj_tptr
)));
798 ND_PRINT("\n\t Verify Interval: %u",
799 GET_BE_U_2(obj_tptr
+ 2));
800 ND_PRINT("\n\t Data links: %u",
801 GET_BE_U_4(obj_tptr
+ 4));
802 ND_PRINT("\n\t Encoding type: %s",
803 tok2str(gmpls_encoding_values
, "Unknown", GET_U_1((obj_tptr
+ 8))));
804 ND_PRINT("\n\t Verify Transport Mechanism: %u (0x%x)%s",
805 GET_BE_U_2(obj_tptr
+ 10),
806 GET_BE_U_2(obj_tptr
+ 10),
807 GET_BE_U_2(obj_tptr
+ 10)&8000 ? " (Payload test messages capable)" : "");
808 bw
.i
= GET_BE_U_4(obj_tptr
+ 12);
809 ND_PRINT("\n\t Transmission Rate: %.3f Mbps",bw
.f
*8/1000000);
810 ND_PRINT("\n\t Wavelength: %u",
811 GET_BE_U_4(obj_tptr
+ 16));
819 case LMP_OBJ_VERIFY_BEGIN_ACK
:
820 switch(lmp_obj_ctype
) {
823 ND_PRINT(" (not correct for object)");
826 ND_PRINT("\n\t Verify Dead Interval: %u"
827 "\n\t Verify Transport Response: %u",
828 GET_BE_U_2(obj_tptr
),
829 GET_BE_U_2(obj_tptr
+ 2));
837 case LMP_OBJ_VERIFY_ID
:
838 switch(lmp_obj_ctype
) {
841 ND_PRINT(" (not correct for object)");
844 ND_PRINT("\n\t Verify ID: %u",
845 GET_BE_U_4(obj_tptr
));
853 case LMP_OBJ_CHANNEL_STATUS
:
854 switch(lmp_obj_ctype
) {
857 /* Decode pairs: <Interface_ID (4 bytes), Channel_status (4 bytes)> */
858 while (offset
+8 <= obj_tlen
) {
859 ND_PRINT("\n\t Interface ID: %s (0x%08x)",
860 GET_IPADDR_STRING(obj_tptr
+offset
),
861 GET_BE_U_4(obj_tptr
+ offset
));
863 ND_PRINT("\n\t\t Active: %s (%u)",
864 (GET_BE_U_4(obj_tptr
+ offset
+ 4)>>31) ?
865 "Allocated" : "Non-allocated",
866 (GET_BE_U_4(obj_tptr
+ offset
+ 4)>>31));
868 ND_PRINT("\n\t\t Direction: %s (%u)",
869 (GET_BE_U_4(obj_tptr
+ offset
+ 4)>>30)&0x1 ?
870 "Transmit" : "Receive",
871 (GET_BE_U_4(obj_tptr
+ offset
+ 4)>>30)&0x1);
873 ND_PRINT("\n\t\t Channel Status: %s (%u)",
874 tok2str(lmp_obj_channel_status_values
,
876 GET_BE_U_4(obj_tptr
+ offset
+ 4)&0x3FFFFFF),
877 GET_BE_U_4(obj_tptr
+ offset
+ 4)&0x3FFFFFF);
884 /* Decode pairs: <Interface_ID (16 bytes), Channel_status (4 bytes)> */
885 while (offset
+20 <= obj_tlen
) {
886 ND_PRINT("\n\t Interface ID: %s (0x%08x)",
887 GET_IP6ADDR_STRING(obj_tptr
+offset
),
888 GET_BE_U_4(obj_tptr
+ offset
));
890 ND_PRINT("\n\t\t Active: %s (%u)",
891 (GET_BE_U_4(obj_tptr
+ offset
+ 16)>>31) ?
892 "Allocated" : "Non-allocated",
893 (GET_BE_U_4(obj_tptr
+ offset
+ 16)>>31));
895 ND_PRINT("\n\t\t Direction: %s (%u)",
896 (GET_BE_U_4(obj_tptr
+ offset
+ 16)>>30)&0x1 ?
897 "Transmit" : "Receive",
898 (GET_BE_U_4(obj_tptr
+ offset
+ 16)>>30)&0x1);
900 ND_PRINT("\n\t\t Channel Status: %s (%u)",
901 tok2str(lmp_obj_channel_status_values
,
903 GET_BE_U_4(obj_tptr
+ offset
+ 16)&0x3FFFFFF),
904 GET_BE_U_4(obj_tptr
+ offset
+ 16)&0x3FFFFFF);
911 /* Decode pairs: <Interface_ID (4 bytes), Channel_status (4 bytes)> */
912 while (offset
+8 <= obj_tlen
) {
913 ND_PRINT("\n\t Interface ID: %u (0x%08x)",
914 GET_BE_U_4(obj_tptr
+ offset
),
915 GET_BE_U_4(obj_tptr
+ offset
));
917 ND_PRINT("\n\t\t Active: %s (%u)",
918 (GET_BE_U_4(obj_tptr
+ offset
+ 4)>>31) ?
919 "Allocated" : "Non-allocated",
920 (GET_BE_U_4(obj_tptr
+ offset
+ 4)>>31));
922 ND_PRINT("\n\t\t Direction: %s (%u)",
923 (GET_BE_U_4(obj_tptr
+ offset
+ 4)>>30)&0x1 ?
924 "Transmit" : "Receive",
925 (GET_BE_U_4(obj_tptr
+ offset
+ 4)>>30)&0x1);
927 ND_PRINT("\n\t\t Channel Status: %s (%u)",
928 tok2str(lmp_obj_channel_status_values
,
930 GET_BE_U_4(obj_tptr
+ offset
+ 4)&0x3FFFFFF),
931 GET_BE_U_4(obj_tptr
+ offset
+ 4)&0x3FFFFFF);
941 case LMP_OBJ_CHANNEL_STATUS_REQ
:
942 switch(lmp_obj_ctype
) {
945 while (offset
+4 <= obj_tlen
) {
946 ND_PRINT("\n\t Interface ID: %s (0x%08x)",
947 GET_IPADDR_STRING(obj_tptr
+offset
),
948 GET_BE_U_4(obj_tptr
+ offset
));
955 while (offset
+16 <= obj_tlen
) {
956 ND_PRINT("\n\t Interface ID: %s (0x%08x)",
957 GET_IP6ADDR_STRING(obj_tptr
+offset
),
958 GET_BE_U_4(obj_tptr
+ offset
));
965 while (offset
+4 <= obj_tlen
) {
966 ND_PRINT("\n\t Interface ID: %u (0x%08x)",
967 GET_BE_U_4(obj_tptr
+ offset
),
968 GET_BE_U_4(obj_tptr
+ offset
));
978 case LMP_OBJ_ERROR_CODE
:
979 switch(lmp_obj_ctype
) {
980 case LMP_CTYPE_BEGIN_VERIFY_ERROR
:
982 ND_PRINT(" (not correct for object)");
985 ND_PRINT("\n\t Error Code: %s",
986 bittok2str(lmp_obj_begin_verify_error_values
,
988 GET_BE_U_4(obj_tptr
)));
991 case LMP_CTYPE_LINK_SUMMARY_ERROR
:
993 ND_PRINT(" (not correct for object)");
996 ND_PRINT("\n\t Error Code: %s",
997 bittok2str(lmp_obj_link_summary_error_values
,
999 GET_BE_U_4(obj_tptr
)));
1006 case LMP_OBJ_SERVICE_CONFIG
:
1007 switch (lmp_obj_ctype
) {
1008 case LMP_CTYPE_SERVICE_CONFIG_SP
:
1009 if (obj_tlen
!= 4) {
1010 ND_PRINT(" (not correct for object)");
1013 ND_PRINT("\n\t Flags: %s",
1014 bittok2str(lmp_obj_service_config_sp_flag_values
,
1016 GET_U_1(obj_tptr
)));
1018 ND_PRINT("\n\t UNI Version: %u",
1019 GET_U_1(obj_tptr
+ 1));
1023 case LMP_CTYPE_SERVICE_CONFIG_CPSA
:
1024 if (obj_tlen
!= 16) {
1025 ND_PRINT(" (not correct for object)");
1029 link_type
= GET_U_1(obj_tptr
);
1031 ND_PRINT("\n\t Link Type: %s (%u)",
1032 tok2str(lmp_sd_service_config_cpsa_link_type_values
,
1033 "Unknown", link_type
),
1036 switch (link_type
) {
1037 case LMP_SD_SERVICE_CONFIG_CPSA_LINK_TYPE_SDH
:
1038 ND_PRINT("\n\t Signal Type: %s (%u)",
1039 tok2str(lmp_sd_service_config_cpsa_signal_type_sdh_values
,
1041 GET_U_1(obj_tptr
+ 1)),
1042 GET_U_1(obj_tptr
+ 1));
1045 case LMP_SD_SERVICE_CONFIG_CPSA_LINK_TYPE_SONET
:
1046 ND_PRINT("\n\t Signal Type: %s (%u)",
1047 tok2str(lmp_sd_service_config_cpsa_signal_type_sonet_values
,
1049 GET_U_1(obj_tptr
+ 1)),
1050 GET_U_1(obj_tptr
+ 1));
1054 ND_PRINT("\n\t Transparency: %s",
1055 bittok2str(lmp_obj_service_config_cpsa_tp_flag_values
,
1057 GET_U_1(obj_tptr
+ 2)));
1059 ND_PRINT("\n\t Contiguous Concatenation Types: %s",
1060 bittok2str(lmp_obj_service_config_cpsa_cct_flag_values
,
1062 GET_U_1(obj_tptr
+ 3)));
1064 ND_PRINT("\n\t Minimum NCC: %u",
1065 GET_BE_U_2(obj_tptr
+ 4));
1067 ND_PRINT("\n\t Maximum NCC: %u",
1068 GET_BE_U_2(obj_tptr
+ 6));
1070 ND_PRINT("\n\t Minimum NVC:%u",
1071 GET_BE_U_2(obj_tptr
+ 8));
1073 ND_PRINT("\n\t Maximum NVC:%u",
1074 GET_BE_U_2(obj_tptr
+ 10));
1076 ND_PRINT("\n\t Local Interface ID: %s (0x%08x)",
1077 GET_IPADDR_STRING(obj_tptr
+12),
1078 GET_BE_U_4(obj_tptr
+ 12));
1082 case LMP_CTYPE_SERVICE_CONFIG_TRANSPARENCY_TCM
:
1083 if (obj_tlen
!= 8) {
1084 ND_PRINT(" (not correct for object)");
1088 ND_PRINT("\n\t Transparency Flags: %s",
1090 lmp_obj_service_config_nsa_transparency_flag_values
,
1092 GET_BE_U_4(obj_tptr
)));
1094 ND_PRINT("\n\t TCM Monitoring Flags: %s",
1096 lmp_obj_service_config_nsa_tcm_flag_values
,
1098 GET_U_1(obj_tptr
+ 7)));
1102 case LMP_CTYPE_SERVICE_CONFIG_NETWORK_DIVERSITY
:
1103 if (obj_tlen
!= 4) {
1104 ND_PRINT(" (not correct for object)");
1108 ND_PRINT("\n\t Diversity: Flags: %s",
1110 lmp_obj_service_config_nsa_network_diversity_flag_values
,
1112 GET_U_1(obj_tptr
+ 3)));
1122 if (ndo
->ndo_vflag
<= 1)
1123 print_unknown_data(ndo
,obj_tptr
,"\n\t ",obj_tlen
);
1126 /* do we want to see an additionally hexdump ? */
1127 if (ndo
->ndo_vflag
> 1 || hexdump
==TRUE
)
1128 print_unknown_data(ndo
,tptr
+sizeof(struct lmp_object_header
),"\n\t ",
1129 lmp_obj_len
-sizeof(struct lmp_object_header
));
1131 if (tlen
< lmp_obj_len
) {
1132 ND_PRINT(" [remaining objects length %u < %u]", tlen
, lmp_obj_len
);
1133 nd_print_invalid(ndo
);
1141 nd_print_trunc(ndo
);